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Original Articles

Experimental investigation on engine performances, combustion characteristics and emission of exhaust gases of VCR engine fuelled with cottonseed oil methyl ester blended with diesel

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References

  • Abu-Jraia, A., A. Jehad Yamin, H. Alaa Al-Muhtaseb, and A. Muhanned Hararaha. 2011. Combustion characteristics and engine emissions of a diesel engine fueled with diesel and treated waste cooking oil blends. Chemical Engineering Journal 172:129–36.
  • Agarwal, A. K. 2007. Biofuels (alcohols and biodiesel) applications as fuels for internal combustion engines. Progress in Energy and Combustion Science 33:233–71.
  • Ali, K., M. Guru, D. Altiparmak, and K. Aydin. 2008. Using of cotton oil soap-stock biodiesel–diesel fuel blends as an alternative diesel fuel. Renewable Energy: 33:553–7.
  • Aliyu, B., D. Shitanda, S. Walker, B. Agnew, S. Masheiti, and R. Atan. 2011. Performance and exhaust emissions of a diesel engine fuelled with Croton megalocarpus methyl ester. Applied Thermal Engineering 31:36–41.
  • Amba Prasad Rao, G., and P. Rama Mohan. 2003. Effect of supercharging on the performance of a DI Diesel engine with cotton seed oil. Energy Conversion and Management 44:937–44.
  • An, H., W. M. Yang, S. K. Chou, and K. J. Chua. 2012. Combustion and emissions characteristics of diesel engine fueled by biodiesel at partial load conditions. Applied Energy 99:363–71.
  • Arul Mozhi Selvan, V., R. B. Anand, and M. Udayakumar. 2009. Combustion characteristics of Diesohol using bio diesel as an additive in a direct injection ignition engine under various compression ratios. Energy and Fuels 23:5413–22.
  • Ayhan, D. 2009. Political, economic and environmental impacts of biofuels: A review. Applied Energy 86:S108–S117.
  • Breda, K. 2011. Influence of biodiesel on engine combustion and emission characteristics. Applied Energy 88:1803–812.
  • Canan, K., C. Hamamci, A. Baysal, O. Akbaa, S. Erdogan, and A. Saydut. 2009. Methyl ester of peanut (Arachis hypogea L.) seed oil as a potential feedstock for biodiesel production. Renewable Energy 34:1257–60.
  • Cheng, A. S., A. Upatnieks, and C. J. Mueller. 2006. Investigation of the impact of biodiesel fuelling on NOx emissions using an optical direct injection diesel engine. International Journal of Engine Research 7:297–318.
  • Devan, P. K., and N. V. Mahalakshmi. 2009a. A study of the performance, emission and combustion characteristics of a compression ignition engine using methyl ester of paradise oil–eucalyptus oil blends. Applied Energy 86:675–80.
  • Devan, P. K., and N. V. Mahalakshmi. 2009b. Performance, emission and combustion characteristics of poon oil and its diesel blends in a DI diesel engine. Fuel 88:861–7.
  • Devan, P. K., and N. V. Mahalakshmi. 2009c. Study of the performance, emission and combustion characteristics of a diesel engine using poon oil-based fuels. Fuel Processing Technology 90:513–9.
  • Duraisamy, M. K., T. Balusamy, and T. Senthilkumar. 2012. Effect of compression ratio on CI engine fueled with methyl ester of thevetiaperuviana seed oil. ARPN Journal of Engineering and Applied Sciences 7:2.
  • Gogoi, T. K., and D. C. Baruah. 2011. The use of Koroch seed oil methyl ester blends as fuel in a diesel engine. Applied Energy 88:2713–25.
  • Goldsworthy, L. 2012. Combustion behavior of a heavy duty common rail marine Diesel engine fumigated with propane. Experimental Thermal and Fluid Science 42:93–106.
  • He, Y., and Y. D. Bao. 2005. Study on cottonseed oil as a partial substitute for diesel oil in fuel for single-cylinder diesel engine. Renewable Energy 30:805–13.
  • Huseyin, A., and C. Ilkilic. 2010. Effect of ethanol blending with biodiesel on engine performance and exhaust emissions in a CI engine. Applied Thermal Engineering 30: 1199–204.
  • Huseyin, A., and H. Bayindir. 2010. Performance and emission analysis of cottonseed oil methyl ester in a diesel engine. Renewable Energy 35:588–92.
  • Ilkilic, C. 2009. Emission Characteristics of a diesel engine fueled by 25% sunflower oil methyl ester and 75% diesel fuel blend. Energy Sources, Part A: Recovery, Utilization, and Environmental Effects 31:6:480–91.
  • Ismet, C., E. Mutlu, and H. Solmaz. 2012. Variation of performance and emission characteristics of a diesel engine fueled with diesel, rapeseed oil and hazelnut oil methyl ester blends. Renewable Energy 48:122–6.
  • Jo-Han, Ng, H. K. Ng, and S. Gan. 2012. Characterization of engine-out responses from a light-duty diesel engine fuelled with palm methyl ester (PME). Applied Energy 90:58–67.
  • Kaplan, C., R. Arslan, and A. Surmen. 2006. Performance characteristics of sunflower methyl esters as biodiesel. Energy Sources(Part A) 28:751–5.
  • Laguitton, O., C. Crua, T. Cowell, M.R. Heikal, and M.R Gold. 2007. The effect of compression ratio on exhaust emissions from a PCCI diesel engine. Energy Conversion and Management 48:2918–24.
  • Lakshmi Narayana Rao, G., B. Durga Prasad, S. Sampath, and K. Rajagopal. 2007. Combustion analysis of diesel engine fueled with jatropha oil methyl ester - Diesel blends. International Journal of Green Energy 4(6):645–58.
  • Lapuerta, M., O. Armas, and J. Fernández Rodríguez. 2008. Effect of biodiesel fuels on diesel engine emissions. Progress in Energy and Combustion Science 34:198–223.
  • Mohammed, EL-K., and A. Medhat Nemit-allah. 2013. Studying the effect of compression ratio on an engine fueled with waste oil produced biodiesel/diesel fuel. Alexandria Engineering Journal 52:1–11.
  • Murat, K., G. Ergen, and M. Hosoz. 2008. The effects of preheated cottonseed oil methyl ester on the performance and exhaust emissions of a diesel engine. Applied Thermal Engineering 28:2136–43.
  • Murillo, S., J. L. Miguez, J. Porteiro, E. Granada, and J. C. Moran. 2007. Performance and exhaust emissions in the use of biodiesel in outboard diesel engines. Fuel 86:1765–71.
  • Murugesan, A, C. Umarani, R. Subramanian, and N. Nedunchezhian. 2009. Bio-diesel as an alternative fuel for diesel engines-A review. Renewable and Sustainable Energy Reviews 13:653–62.
  • Mustafa, C., A. N. Ozsezen, E. Arcaklioglu, and A. Erdil. 2009. Prediction of performance and exhaust emissions of a diesel engine fueled with biodiesel produced from waste frying palm oil. Expert Systems with Applications 36:9268–80.
  • Nurun Nabi Md.,, Akhter. 2009. Biodiesel from cotton seed oil and its effect on engine performance and exhaust emissions. Applied Thermal Engineering 29:2265–70.
  • Qi, D. H., L.M. Geng, H. Chen, Y. ZH. Bian, J. Liu, and X. CH. Ren. 2009. Combustion and performance evaluation of a diesel engine fuelled with biodiesel produced from soybean crude oil. Renewable Energy 34:2706–13.
  • Raheman, H, and S. V. Ghadge. 2007. Performance of compression ignition engine with mahua (Madhucaindica) biodiesel. Fuel 86:2568–73.
  • Roberto Pereira, G., D. Cesar Oliveira, L. Jorge Oliveira, P. Paulo Cesar Oliveira, E. Carlos Fellows, and E. Oscar Piamba. 2007. Technical Note -Exhaust emissions and electric energy generation in a stationary engine using blends of diesel and soybean biodiesel. Renewable Energy 32:2453–60.
  • Roskilly, A. P., S. K. Nanda, Y. D. Wang, and J. Chirkowski. 2008. The performance and the gaseous emissions of two small marine craft diesel engines fuelled with biodiesel. Applied Thermal Engineering 28:872–80.
  • Sahoo, P. K., L. M. Das, M. K. G. Babu, and S. N. Naik. 2007. Bio-diesel development from high acid value polanga seed oil and performance evaluation in a CI engine. Fuel 86:448–54.
  • Sayin, C., and M. Canakci. 2009. Effects of injection timing on the engine performance and exhaust emissions of a dual-fuel diesel engine. Energy Conversion and Management 50:203–13.
  • Singh Pranil, J., K. Jagjit, and S. Anirudh. 2010. Preparation, characterization, engine performance and emission characteristics of coconut oil based hybrid fuels. Renewable Energy 35:2065–70.
  • Soham, C., A. Karemore, S. Das, A. Deysarkar, and R. Sen. 2011. Bio-catalytic production of biodiesel from cottonseed oil: Standardization of process parameters and comparison of fuel characteristics. Applied Energy 88:1251–6.
  • Su Han, P., J. Cha, and C. S. Lee. 2012. Impact of biodiesel in bioethanol blended diesel on the engine performance and emissions characteristics in compression ignition engine. Applied Energy 99:334–43.
  • Sukumar Puhan, R. J., K. Balasubbramanian, and G. Nagarajan. 2009. Effect of injection pressure on performance, emission and combustion characteristics of high linolenic linseed oil methyl ester in a DI diesel engine. Renewable Energy 34:1227–33.

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